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在表达具有破坏的铜结合位点的超氧化物歧化酶1的转基因小鼠中出现的纤维状包涵体和运动神经元变性。

Fibrillar inclusions and motor neuron degeneration in transgenic mice expressing superoxide dismutase 1 with a disrupted copper-binding site.

作者信息

Wang Jiou, Xu Guilian, Gonzales Victoria, Coonfield Michael, Fromholt David, Copeland Neal G, Jenkins Nancy A, Borchelt David R

机构信息

Department of Neuroscience, Johns Hopkins School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Neurobiol Dis. 2002 Jul;10(2):128-38. doi: 10.1006/nbdi.2002.0498.

Abstract

Mutations in Cu/Zn superoxide dismutase 1 (SOD1) have been linked to dominantly inherited forms of amyotrophic lateral sclerosis (FALS). To test the hypothesis that the toxicity of mutant SOD1 originates in Cu(2+)-mediated formation of toxic radicals, we generated transgenic mice that express human SOD1 that encodes disease-linked mutations at two of the four histidine residues that are crucial for the coordinated binding of copper (H46R/H48Q). We demonstrate that mice expressing this mutant, which possesses little or no superoxide scavenging activity, develop motor neuron disease. Hence, mutations in SOD1 that disrupt the copper-binding site do not eliminate toxicity. We note that the pathology of the H46R/H48Q mice is dominated by fibrillar (Thioflavin-S-positive) inclusions and that similar inclusions were evident in mouse models that express the G37R, G85R, and G93A variants of human SOD1. Overall, our data are consistent with the hypothesis that the aberrant folding/aggregation of mutant SOD1 is a prominent feature in the pathogenesis of motor neuron disease.

摘要

铜锌超氧化物歧化酶1(SOD1)的突变与肌萎缩侧索硬化症(FALS)的显性遗传形式有关。为了验证突变型SOD1的毒性源于铜(2+)介导的毒性自由基形成这一假设,我们培育了转基因小鼠,这些小鼠表达的人类SOD1在对铜的协同结合至关重要的四个组氨酸残基中的两个处编码与疾病相关的突变(H46R/H48Q)。我们证明,表达这种几乎没有或没有超氧化物清除活性的突变体的小鼠会患上运动神经元疾病。因此,破坏铜结合位点的SOD1突变并不能消除毒性。我们注意到,H46R/H48Q小鼠的病理学特征主要是纤维状(硫黄素-S阳性)包涵体,并且在表达人类SOD1的G37R、G85R和G93A变体的小鼠模型中也明显存在类似的包涵体。总体而言,我们的数据与突变型SOD1的异常折叠/聚集是运动神经元疾病发病机制中的一个突出特征这一假设一致。

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